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Wavelet-based approach for structural damage detection

机译:基于小波的结构损伤检测方法

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A wavelet-based approach is proposed for structural damage detection and health monitoring. Characteristics of representative vibration signals under the wavelet transformation are examined. The methodology is then applied to simulation data generated from a simple structural model subjected to a harmonic excitation. The model consists of multiple breakable springs, some of which may suffer irreversible damage when the response exceeds a threshold value or the number of cycles of motion is accumulated beyond their fatigue life. In cases of either abrupt or accumulative damages, occurrence of damage and the moment when it occurs can be clearly determined in the details of the wavelet decomposition of these data. Similar results are observed for the real acceleration data of the seismic response recorded on the roof of a building during the 1971 San Fernando earthquake. Effects of noise intensity and damage severity are investigated and presented by a detectability map. Results show the great promise of the wavelet approach for damage detection and structural health monitoring. [References: 29]
机译:提出了一种基于小波的方法进行结构损伤检测和健康监测。研究了小波变换下典型振动信号的特性。然后,将该方法应用于从简单结构模型产生的模拟数据,该结构模型会受到谐波激励。该模型由多个易碎弹簧组成,当响应超过阈值或运动循环次数超过其疲劳寿命时,其中一些可能会遭受不可逆的损坏。无论是突然的损坏还是累积的损坏,都可以在这些数据的小波分解细节中清楚地确定损坏的发生和发生的时刻。对于1971年圣费尔南多地震期间记录在建筑物屋顶上的地震响应的真实加速度数据,观察到了相似的结果。研究了噪声强度和破坏严重性的影响,并通过可检测性图呈现。结果表明,小波方法在损伤检测和结构健康监测方面具有广阔的前景。 [参考:29]

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